JOURNAL ARTICLE

Transition between flat magnitude and flat group delay low pass recursive digital filters

Negovan StamenkovićMilan Dejanović

Year: 2019 Journal:   University thought - Publication in Natural Sciences Vol: 9 (1)Pages: 62-66   Publisher: University of Priština - Faculty of Natural Science and Mathematics, Kosovska Mitrovica

Abstract

Many a paper has been written on the characteristics of the continuous-time and discrete-time low-pass filters which are designed to have either maximally flat magnitude characteristics or maximally flat group delay responses. The polynomial (all pole) low pass recursive digital filters which are characterised by characterise the transition between a flat magnitude and flat group delay characteristics, named Transitional Butterworth Thiran (TBTh) recursive digital filters, is considered. The characteristics of the resulting filter change gradually from the characteristics of the well known Butterwort's filter to the characteristics of the Thiran's filter with the maximally flat group delay characteristic. Poles of the TBTh filter are obtained by interpolating between poles Butterworth and Thiran's filters by varying a parametar which controls the pole positions that enables a tradeoff between the steepness magnitude characteristic at passband edge and group delay deviation.

Keywords:
Magnitude (astronomy) Mathematics Passband Low-pass filter Filter (signal processing) Butterworth filter Control theory (sociology) Group delay and phase delay Transition band m-derived filter Digital filter Prototype filter Mathematical analysis Band-pass filter Physics Computer science Optics

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Topics

Photonic and Optical Devices
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced Photonic Communication Systems
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Optical Network Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

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